13. A complex ion has been observed which starts with a violet color with six aqua ligands attached. It goes through a series of color changes until six cyano ligands have attached in place of the aqua ligands. The second complex ion (Ir(CN) gl absorbs at 420 nm. -4 A. Calculate the crystal field splitting energy in J/mole for the [Ir(CN)§] complex ion. ng priwolot ar o edne -4 B. Explain what color the new (Ir(CN)§] complex ion should appear as. to yaaab snols (8) C. Explain what the color change tells us about the effect of the ligands on the d orbitals. Draw a picture of the d orbitals for both complex ions. e obes at (ob ed to

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13. A complex ion has been observed which starts with a violet color with six aqua ligands
attached. It goes through a series of color changes until six cyano ligands have attached
in place of the aqua ligands. The second complex ion (Ir(CN) gl absorbs at 420 nm.
-4
A. Calculate the crystal field splitting energy in J/mole for the [Ir(CN)§] complex ion.
ng priwolot ar o
edne
-4
B. Explain what color the new (Ir(CN)§] complex ion should appear as.
to yaaab snols (8)
C. Explain what the color change tells us about the effect of the ligands on the d orbitals.
Draw a picture of the d orbitals for both complex ions.
e obes at
(ob ed to
Transcribed Image Text:13. A complex ion has been observed which starts with a violet color with six aqua ligands attached. It goes through a series of color changes until six cyano ligands have attached in place of the aqua ligands. The second complex ion (Ir(CN) gl absorbs at 420 nm. -4 A. Calculate the crystal field splitting energy in J/mole for the [Ir(CN)§] complex ion. ng priwolot ar o edne -4 B. Explain what color the new (Ir(CN)§] complex ion should appear as. to yaaab snols (8) C. Explain what the color change tells us about the effect of the ligands on the d orbitals. Draw a picture of the d orbitals for both complex ions. e obes at (ob ed to
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